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市场调查报告书
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植物表型:市场占有率分析、产业趋势与统计、成长预测(2024-2029)Plant Phenotyping - Market Share Analysis, Industry Trends & Statistics, Growth Forecasts (2024 - 2029) |
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植物表型市场规模预计到 2024 年为 2813.2 亿美元,预计到 2029 年将达到 4634.7 亿美元,在预测期内(2024-2029 年)增长 10.5%,复合年增长率为
人口增长增加了种植产量作物以满足粮食安全需求的需求,从而导致对创新植物育种技术以提高作物生产力的需求增加。我是。频繁发生的极端天气事件和全球暖化也增加了世界各地对作物生产力的需求,有利于表型市场。该市场以欧洲为主。
此外,成像技术的创新有助于更好地表征植物特征,从而开发出适合特定环境的更好的作物。成像技术利用成像光谱、红外线成像、萤光成像和可见光成像等多种技术帮助检测植物的光学特性。这些资料从宏观尺度到分子尺度进行分类。
世界上几乎 90% 的作物都是由种子种植的,种子广泛分布于国内和国际贸易中。遗传资源也可以在育种计划中以种子的形式进行分配和交换。然而,许多植物病原体可以透过种子传播,种子分发是传播植物病害的一种非常有效的方法。在适当的环境条件下,种子携带的病原微生物可以传播并引起发育中的幼苗和植物的疾病。病原体攻击发芽的幼苗并影响幼苗的建立,而对于其他病原体,疾病症状直到生长后期才会出现。随着影响作物生产力的种子病害数量不断增加,需要采用植物表型分析等技术来消除它们并培育更好的无病作物品种。因此,市场日益受到世界各地谷物、水果、蔬菜、油籽和其他作物植物病害爆发的推动。
2019年,欧洲占据植物表型市场的最大份额。欧洲和北美政府和其他组织对植物表型实验的重视对这些地区植物表型市场的成长发挥了关键作用。此外,植物表型市场的主要企业集中在欧洲地区,使其成为比其他地区提供更有效的表型研究和服务的主导市场。欧洲国家的研究活动数量不断增加,植物表型分析的产品和服务越来越知名,市场不断扩大。 2019年在欧洲进行的一项研究发现,义大利、希腊、葡萄牙和西班牙的地中海气候特征是夏季炎热干燥、干旱频繁,而且地中海国家内部表型的异质性也已被证实。描述了农业的前沿。生产、育种工作和表型分析能力正在推动该地区的市场。
植物表型市场由 LemnaTec、CropDesign BASF SE、Heinz Walz、Photon Systems Instruments、Qubit Systems 和 KeyGene 等几家大公司整合并主导。该市场的特点是竞争激烈,企业投资不断增加。在产品发布、併购、合作和扩张中保持竞争优势。例如,BASF(CropDesign)于2018年在Nunchem开设了全球最先进的黄瓜育种中心,负责Nunchem所有黄瓜的预育种和育种,包括高丝黄瓜、长黄瓜、短黄瓜、零食黄瓜、腌菜黄瓜等。容纳该计划。此外,CropDesign 工程师也正在开发新的感测器来监测植物生长和土壤品质。这可以轻鬆连结到内部开发的用户友好的应用程式。
The Plant Phenotyping Market size is estimated at USD 281.32 billion in 2024, and is expected to reach USD 463.47 billion by 2029, growing at a CAGR of 10.5% during the forecast period (2024-2029).
The increasing population has driven the need to grow high-yielding crops for the fulfillment of food security needs, which in turn is boosting the demand for innovative plant breeding techniques for improved crop productivity. High frequency of extreme weather conditions and global warming are also enhancing the need for crop productivity across the world which is favoring the phenotyping market. The market is dominated by the European region.
Furthermore, the innovations in imaging techniques facilitate the better assessment of plant characteristics for the development of better crop breeds suitable for the particular environment. Imaging techniques assist in detecting optical properties of plants by using various technologies like imaging spectroscopy, infrared imaging, fluorescence imaging, and visible light imaging, whose, data sorts from macroscopic to molecular scale.
Almost 90% of all the world's food crops are grown from seeds that are widely distributed in national trade and international trade. Germplasm is also distributed and exchanged in the form of seeds in breeding programs. However, many plant pathogens can be seed transmitted and seed distribution is a very efficient form of plant disease dispersal. Under suitable environmental conditions, disease-causing organisms that are carried by seeds may be transmitted to cause disease in developing seedlings or plants. The pathogen attacks the germinating seedling and affects the seedling establishment, with others, disease symptoms are not seen until a later stage of growth. With the rising number of seed diseases that are affecting crop productivity, it has become necessary to adopt techniques like plant phenotyping to eliminate them and propagate better and disease-free crop varieties. Hence, the market is increasingly been driven by the outbreak of plant diseases in cereals, fruits, vegetables, oilseeds and other crops across the world.
Europe accounted for the largest share of the plant phenotyping market in 2019. High emphasis on the funding of plant phenotyping experiments from governments and other organizations in Europe and North America has played a vital role in the growth of the plant phenotyping market in these regions. Additionally, key players in the plant phenotyping market are located in the European region, which makes it the dominant market with effective phenotyping research and services over other regions. There is a rising number of research activities taking place across the European countries which are driving awareness and in turn the market for plant phenotyping products and services. In 2019, a study conducted in Europe established that the Mediterranean climate in the countries of Italy, Greece, Portugal, and Spain with hot dry summers and frequent droughts alongside the heterogeneous panorama of phenotyping within Mediterranean countries, describing the state of the art of agricultural production, breeding initiatives, and phenotyping capabilities, drive the market in the region.
The plant phenotyping market is consolidated and is dominated by a few major players likeLemnaTec, CropDesign - BASF SE, Heinz Walz, Photon Systems Instruments, Qubit Systems, and KeyGene.The market is characterized by a high degree of competition and the companies are increasingly investing in product launches, mergers & acquisitions,collaborations, and expansions to keep ahead of the competition. For example, in 2018,BASF (CropDesign) openeda global state-of-the-art breeding center for cucumbers in Nunhem,housing all cucumber pre-breeding and breeding programs in Nunhem: high wire, long, short, snack, and pickling cucumber types, including the phenotyping line which offers digital evaluation of fruit characteristics.Furthermore, CropDesign engineers are also developing novel sensors for monitoring plant growth or soil quality, which can be readily linked to in-house developed, user-friendly apps.